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Organizational dissolved oxygen measuring instrument
The survival of tissues or organs depends on sufficient oxygen supply from mitochondria within the cell. The measurement of tissue oxygen partial pres
Product details

The survival of tissues or organs depends on sufficient oxygen supply from mitochondria within the cell. The measurement of tissue oxygen partial pressure provides the feasibility of cellular level oxygen measurement. Optronix oxygen sensors are based on optical fluorescence technology. Can continuously and quantitatively monitor local areasOrganizational or liquid oxygen partial pressureThis optical fluorescence technology electrode has many important advantages compared to the polar method electrode, which makes our oxygen monitoring easier to use and more suitable for oxygen measurement within the usual physiological range. The incredible sensitivity can also meet low oxygen conditions.

Tissue Oxygen Monitering OxyLab pO2

Based on the principle of oxygen attenuation of fluorescent substances, OxyLab PO2 uses small fiber optic sensors to monitor the instantaneous changes in tissue oxygen in local areas without causing oxygen consumption. OxyLab PO2 has multiple characteristics, avoiding the limitations of practical operations such as installation and calibration of oxygen sensors. The pre calibrated probe has the characteristics of continuous real-time measurement of oxygen partial pressure, MRI compatibility, high sensitivity, etc. Especially in the case of tissue hypoxia, the advantages of this device will be more obvious. It can be used in combination with OxyLab LDF, using probe combination technology to continuously measure oxygen partial pressure, blood flow, temperature, etc. with one probe. This system can provide a data reading and recording system with 2-16 channels and has a user-friendly interface. Through the integrated temperature probe, automatic temperature compensation function can be performed.

Typical applications

Tumor dissolved oxygen monitoring Brain Dissolved Oxygen Monitoring (Stroke or Brain Injury) Organ and tissue dissolved oxygen monitoring
Skin flap dissolved oxygen monitoring Ophthalmology Applications wound healing
FMRI Confirmation Technique In vitro cell culture dissolved oxygen monitoring Biological reaction


There are two models of dissolved oxygen measuring instruments:

tissue oxygen monitor
OxyLab pO2 ™
1-channel dissolved oxygen and temperature tester

pO2 monitor
OxyLite ™
2 or 4-channel dissolved oxygen and temperature tester


There are two models to choose from for combined monitoring of tissue blood flow monitor and dissolved oxygen monitor:

pO2 blood flow monitor
OxyLab pO2 / OxyLab LDF
Single channel tissue blood flow/oxygen/temperature composite tester

blood perfusion tissue oxygen monitors
OxyLite / OxyFlo
Multi channel tissue blood flow/oxygen/temperature composite tester


Dissolved Oxygen Sensor
Single oxygen partial pressure measurement probe, oxygen partial pressure/temperature probe, oxygen partial pressure/blood flow probe, oxygen partial pressure/temperature/blood flow probe, needle probe.



Technical parameters:

parameter Oxygen Temperature
Mode of operation Fluorescence quenching Thermocouples or manual input
Units mmHg/kPa °C
Range 0 - 100 mmHg(30- 44C) 20 - 50 °C
Resolution 0.1 mmHg 0.1 °C
Accuracy 0.7 mmHg/10% reading 0.2 °C
Response Time < 10 seconds 1 second
Output Range 0-5V(0-100mmHg) 0-5V(0-50C)
Output Resolution 0.05 mmHg (2.5 mV) 0.025 °C (2.5 mV)
Default Averaging 5s None
Dimensions 90 x 290 x 260 mm
Weight 2kg
Power 93 - 240 VAC; 47 - 63 Hz
Storage Temp. 5°C - 50°C
Operating Temp. 10°C - 35°C
Operating Humidity 0-70%(non condensing)

Typical experiment


Cerebral ischemia and reperfusion (dissolved oxygen, temperature recording, blood flow perfusion)


Skin flap blood flow occlusion and reperfusion (dissolved oxygen, temperature, perfusion blood flow)


Muscle ischemia and reperfusion recording (dissolved oxygen, temperature, blood flow perfusion)


Oxygen distribution in In Vitro Model Layers


Carbogen reaction in tumors


Vitreous humor oxidation of the eyeball


Renal response after changing renal perfusion pressure


The impact of hemorrhagic shock on liver and muscle oxygen



Literature Download(A large number of literature indexes on tumors, cancer, cerebral blood flow monitoring, physiology, surgery, wound healing, shock, sepsis, ex vivo applications, ophthalmology research)

Note: This product is mainly used as an experimental instrument for scientific research. Non clinical medical equipment.

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